Sealing assembly for network security server jack
By designing a sealing component for network security server sockets, and utilizing side and top sealing components with shrinkage function, the hard friction with the socket is reduced, solving the problem of wear and loosening of the sealing plug, and achieving effective dust prevention and long-life sealing of the socket.
Patent Information
- Application Number
- CN202520514063.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-03-24
AI Technical Summary
Existing network security server socket seals are prone to wear during frequent plugging and unplugging, causing them to loosen and fall off, thus failing to effectively prevent dust.
A sealing assembly for a network security server socket is designed, including a front cover, side seals and a top seal. By setting the side seals and top seals with a shrinking function, hard friction with the socket is reduced. Anti-loosening rubber sheets and convex rubber plugs are used to fit the inner wall of the socket to reduce wear.
It effectively extends the service life of the sealing components, ensures that the socket maintains good dustproof performance when not in use, and is simple and convenient to operate.
Smart Images

Figure CN223978195U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of network port sealing technology, specifically a sealing component for a network security server socket. Background Technology
[0002] Network security servers are dedicated servers used to protect network resources, data, and communication security. They employ various technologies and measures to prevent threats such as unauthorized access, data breaches, and malicious attacks.
[0003] Network security servers are typically equipped with multiple network ports for connecting external devices. When some network ports are not in use, sealing plugs are used to seal the ports to prevent dust from entering.
[0004] Existing network socket sealing plugs are made of rubber or plastic. During use, frequent insertion and removal of the sealing plugs can easily cause wear, leading to loosening and falling off later. Based on this, a sealing component for network security server sockets is provided. Utility Model Content
[0005] The purpose of this utility model is to provide a sealing component for a network security server socket in order to solve the problems mentioned above.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a sealing component for a network security server socket, comprising a front cover plate, two symmetrically arranged movable slots at one end of the front cover plate, the two movable slots extending to the other end of the front cover plate, a side sealing member connected to the front cover plate through the movable slots, the side sealing member being used to fit against the inner wall side of the network socket, a top sealing member being provided in the middle area of the two side sealing members, the top sealing member being used to fit against and seal against the top of the inner wall at the opening of the network socket, and the front cover plate being used to seal the opening of the network socket;
[0007] During the insertion of the side and top sealing components into the network socket, the contraction of the side and top sealing components reduces the hard friction with the network socket.
[0008] As a further improvement of this utility model: the side sealing component includes a side plate, an arc-shaped handle, and an anti-loosening rubber sheet;
[0009] The side plate extends from one end of the front cover plate through the moving groove to the other end of the front cover plate, and the arc-shaped handle is located at the other end of the front cover plate and is connected and fixed to the side plate.
[0010] The anti-loosening rubber sheet is bonded and fixed to the side of the two side plates that are far apart from each other. The inner wall width of the moving groove is greater than the sum of the thickness of the side plates and the anti-loosening rubber sheet. By pinching the two arc-shaped handles, the two arc-shaped handles are brought closer to each other, so that the distance between the two anti-loosening rubber sheets is less than the distance between the two sides of the inner wall of the network socket, thereby reducing the hard friction between the anti-loosening rubber sheet and the inner wall side of the network socket.
[0011] As a further improvement of this utility model: a sealing block is integrally formed on the outer side of the arc-shaped handle near the front cover plate, and the width of the sealing block is greater than the width of the inner wall of the moving groove.
[0012] As a further improvement of this utility model: the top sealing component includes an arc-shaped spring piece, a connecting strip, and a convex rubber plug;
[0013] The arc-shaped spring is fixed between the two side plates, the connecting strip is fixed to the inner side of the upper surface of the arc-shaped spring, and the convex rubber plug is fixed to the top of the connecting strip and fits against the end face of the front cover plate. The convex rubber plug is used to fit and seal against the top of the inner wall of the network socket opening.
[0014] The two side plates are brought close together to compress the arc-shaped spring sheet, causing it to move downwards, thereby reducing the hard friction between the convex rubber plug and the top of the inner wall of the network socket.
[0015] As a further embodiment of this utility model: the anti-loosening rubber sheet has fins formed on the side away from the side plate, the height of the side plate matches the height of the inner wall of the network socket, and the outer wall dimension of the front cover plate is larger than the opening dimension of the network socket.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] By incorporating side and top sealing components with shrinkage function, when the side and top sealing components are inserted into the network socket, the convex rubber plug does not come into contact with the top of the network socket and the anti-loosening rubber sheet does not come into contact with the inner wall of the network socket, thereby reducing the wear of the anti-loosening rubber sheet and the convex rubber plug and effectively extending the service life of the components. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of this utility model;
[0019] Figure 2 This is a schematic diagram of the structure of this utility model from another perspective;
[0020] Figure 3 This is a schematic diagram showing the disassembled parts of this utility model.
[0021] In the diagram: 1. Front cover plate; 2. Moving groove; 3. Side sealing component; 301. Side plate; 302. Arc-shaped handle; 303. Sealing block; 304. Anti-loosening rubber sheet; 4. Top sealing component; 401. Arc-shaped spring; 402. Connecting strip; 403. Convex rubber plug. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figures 1-3 In this embodiment of the present invention, a sealing component for a network security server socket includes a front cover plate 1. Two movable grooves 2 are symmetrically opened at one end of the front cover plate 1. The two movable grooves 2 extend to the other end of the front cover plate 1. The front cover plate 1 is connected to a side sealing member 3 through the movable grooves 2. The side sealing member 3 is used to fit against the inner wall side of the network socket. A top sealing member 4 is provided in the middle area of the two side sealing members 3. The top sealing member 4 is used to fit against the top of the inner wall at the opening of the network socket and seal it. The front cover plate 1 is used to seal the opening of the network socket.
[0024] During the process of inserting the side sealing member 3 and the top sealing member 4 into the network socket, the contraction of the side sealing member 3 and the top sealing member 4 is used to reduce the hard friction with the network socket.
[0025] The side sealing component 3 includes a side plate 301, an arc-shaped handle 302, and an anti-loosening rubber sheet 304;
[0026] The side plate 301 extends from one end of the front cover plate 1 through the moving groove 2 to the other end of the front cover plate 1, and the arc-shaped handle 302 is distributed at the other end of the front cover plate 1 and is connected and fixed to the side plate 301.
[0027] The anti-loosening rubber sheet 304 is bonded and fixed to the side of the two side plates 301 that are far apart from each other. The inner wall width of the moving groove 2 is greater than the sum of the thickness of the side plate 301 and the anti-loosening rubber sheet 304. By pinching the two arc-shaped handles 302, the two arc-shaped handles 302 are brought closer to each other, so that the distance between the two anti-loosening rubber sheets 304 is smaller than the distance between the two sides of the inner wall of the network socket, thereby reducing the hard friction between the anti-loosening rubber sheet 304 and the inner wall side of the network socket.
[0028] The top sealing component 4 includes an arc-shaped spring piece 401, a connecting strip 402, and a convex rubber plug 403;
[0029] The arc-shaped spring piece 401 is fixed between the two side plates 301, the connecting strip 402 is fixed to the inner side of the upper surface of the arc-shaped spring piece 401, and the convex rubber plug 403 is fixed to the top of the connecting strip 402 and fits against the end face of the front cover plate 1. The convex rubber plug 403 is used to fit and seal against the top of the inner wall of the network socket opening.
[0030] The two side plates 301 approach each other and compress the arc-shaped spring sheet 401 to deform it, thereby causing the convex rubber plug 403 to move downward, thus reducing the hard friction between the convex rubber plug 403 and the top of the inner wall of the network socket.
[0031] The anti-loosening film 304 has fins formed on the side away from the side plate 301. The height of the side plate 301 matches the height of the inner wall of the network socket. The outer wall size of the front cover plate 1 is larger than the opening size of the network socket.
[0032] In this embodiment, the sealing component is used to seal and prevent dust from entering the network ports of a network security server, and the operation method is as follows:
[0033] Manually pinch the two curved handles 302 together to bring them closer together, so that the two side plates 301 move closer along the moving groove 2, thereby making the gap between the two anti-loosening rubber sheets 304 smaller than the inner wall width of the network socket.
[0034] At the same time, when the two side plates 301 come close to each other, they compress the arc-shaped spring sheet 401 to deform. The concave surface of the arc-shaped spring sheet 401 faces upward. Thus, when the arc-shaped spring sheet 401 is deformed under force, the height of the middle part of the arc-shaped spring sheet 401 decreases, that is, the connecting strip 402 and the convex rubber plug 403 move down as a whole.
[0035] Thus, when the side sealing component 3 and the top sealing component 4 are inserted into the network socket, the convex rubber plug 403 does not come into contact with the top of the network socket and does not come into contact with the inner wall of the network socket and thus reduces the wear of the anti-loosening rubber sheet 304 and the convex rubber plug 403.
[0036] When the side sealing component 3 and the top sealing component 4 are fully inserted into the network socket, the front cover plate 1 is in contact with the surface of the network security server shell. At this time, the squeezing of the arc handle 302 is released, and the arc spring piece 401 is reset under its own elastic force. The two side plates 301 push the arc spring piece 401 to reset and move away, so that the anti-loosening rubber sheet 304 is in contact with the side wall of the network socket. At the same time, the reset of the arc spring piece 401 pushes the connecting strip 402 and the convex rubber plug 403 to move upward. The convex rubber plug 403 is inserted into the top of the inner wall at the opening of the network socket, thus completing the installation of the sealing components.
[0037] The friction between the convex rubber plug 403, the anti-loosening rubber sheet 304 and the inner wall of the network socket ensures that the sealing component is stable and does not loosen. When it is necessary to remove the sealing component, simply pinch the two arc-shaped handles 302 and pull them outward. The operation is simple and convenient.
[0038] Please refer to this carefully. Figures 1-3 The outer side of the arc-shaped handle 302 near the front cover plate 1 has an integrally formed sealing block 303, the width of which is greater than the width of the inner wall of the moving groove 2.
[0039] In this embodiment, the blocking block 303 can shield the area of the movable slot 2, thereby ensuring that the front cover plate 1 completely blocks the network socket and thus maintains a good dustproof effect.
[0040] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A sealing assembly for a network security server jack comprising a front end cover plate (1), characterized in that, One end of the front end cover plate (1) is symmetrically provided with two moving grooves (2), the two moving grooves (2) penetrate to the other end of the front end cover plate (1), the front end cover plate (1) is connected with the side blocking piece (3) through the moving groove (2), the side blocking piece (3) is used for being attached to the inner wall side of the network jack, the middle area of the two side blocking pieces (3) is provided with the top blocking piece (4), the top blocking piece (4) is used for being attached to the top of the inner wall of the network jack opening and being blocked, and the front end cover plate (1) is used for blocking the network jack opening. During the insertion of the side blocking piece (3) and the top blocking piece (4) into the network jack, the contraction of the side blocking piece (3) and the top blocking piece (4) is used for reducing the hard friction with the network jack.
2. A seal assembly for a network security server jack according to claim 1, wherein, The side blocking piece (3) comprises a side plate (301), an arc-shaped handle (302) and an anti-loosening rubber sheet (304). The side plate (301) penetrates through the moving groove (2) from one end of the front end cover plate (1) to the other end of the front end cover plate (1), and the arc-shaped handle (302) is arranged at the other end of the front end cover plate (1) and connected with the side plate (301). The anti-loosening rubber sheet (304) is fixedly connected to the side, away from each other, of the two side plates (301), the inner wall width of the moving groove (2) is greater than the sum of the thicknesses of the side plate (301) and the anti-loosening rubber sheet (304), and the two arc-shaped handles (302) are made close to each other by pinching, so that the spacing between the two anti-loosening rubber sheets (304) is less than the spacing between the two sides of the inner wall of the network jack, and the hard friction between the anti-loosening rubber sheet (304) and the inner wall side of the network jack is reduced.
3. A seal assembly for a network security server jack according to claim 2, wherein, The arc-shaped handle (302) is integrally formed with a blocking block (303) on the outer side close to the position of the front end cover plate (1), and the width of the blocking block (303) is greater than the inner wall width of the moving groove (2).
4. A seal assembly for a network security server jack according to claim 2, wherein, The top blocking piece (4) comprises an arc-shaped elastic sheet (401), a connecting strip (402) and a convex rubber plug (403). The arc-shaped elastic sheet (401) is fixedly connected to the middle of the two side plates (301), the connecting strip (402) is fixedly connected to the inner side of the upper surface of the arc-shaped elastic sheet (401), and the convex rubber plug (403) is fixedly connected to the top of the connecting strip (402) and attached to the end surface of the front end cover plate (1), and the convex rubber plug (403) is used for being attached to the top of the inner wall of the network jack opening and being blocked. The two side plates (301) are made close to each other to extrude the arc-shaped elastic sheet (401) to deform, so that the convex rubber plug (403) is moved downward, and the hard friction between the convex rubber plug (403) and the top of the inner wall of the network jack is reduced.
5. A seal assembly for a network security server jack according to claim 2, wherein, The side, away from the side plate (301), of the anti-loosening rubber sheet (304) is formed with a fin, the height of the side plate (301) matches the height of the inner wall of the network jack, and the outer wall size of the front end cover plate (1) is greater than the opening size of the network jack.